Temporal stability for dynamic network relay sets

J. Macker, B. Adamson, David J. Claypool
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引用次数: 3

Abstract

Distributed relay set election instability within mobile networks can cause backbone topology changes that affect the performance of both unicast and multicast data routing algorithms. We discuss stability improvements to such relay set election by adding a “resistance to change” weighting factor to help reduce change in election results. In particular, we examine a proposed extension to the Essential Connected Dominating Set (ECDS) algorithm that has been specified for use by both present mobile ad hoc network unicast and multicast protocols. We demonstrate temporal stability improvements in the ECDS relay set membership that can be achieved with a simple modification to the election algorithm. Our results are particularly important when dealing with frequently changing election metrics represented in the priority field such as density or link quality as a weight metric. By using several mobile models of networks undergoing link quality fluctuations we demonstrate significant improvements in stability of the backbone set. Our results also indicate that we can maintain good stability results while maintaining a small relay set membership size as compared to the unmodified algorithm.
动态网络中继集的时间稳定性
移动网络中的分布式中继集选举不稳定可能导致主干网拓扑变化,从而影响单播和组播数据路由算法的性能。我们通过增加“变化阻力”加权因子来帮助减少选举结果的变化,从而讨论了这种中继集选举的稳定性改进。特别地,我们研究了基本连接支配集(ECDS)算法的扩展,该算法已被指定用于当前的移动自组织网络单播和多播协议。我们演示了通过对选举算法的简单修改可以实现ECDS中继集成员关系的时间稳定性改进。当处理优先级字段中表示的频繁变化的选举指标(如密度或链接质量作为权重指标)时,我们的结果尤其重要。通过使用几个经历链路质量波动的移动网络模型,我们证明了骨干集稳定性的显著改善。我们的结果还表明,与未修改的算法相比,我们可以在保持较小中继集成员大小的同时保持良好的稳定性结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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